4.6 Article

A Two-Stage Beamforming Antenna Using Butler Matrix and Reconfigurable Frequency Selective Surface for Wide Angle Beam Tilting

Journal

IEEE ANTENNAS AND WIRELESS PROPAGATION LETTERS
Volume 22, Issue 10, Pages 2342-2346

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/LAWP.2023.3286819

Keywords

Beamforming; beamtilting; Butler matrix; reconfigurable frequency selective surface (FSS)

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A two-stage beamforming technique for wide tilt angles is proposed by combining a Butler matrix with a reconfigurable FSS, which can generate 12 unique radiating beams in 12 distinct directions.
A two-stage beamforming technique for a wide tilt angle is proposed in this letter. The proposed structure has the potential to overcome the limitations of Butler matrix-based beamforming technique and reconfigurable frequency selective surfaces (FSS)-based beamforming technique, both of which normally lag behind in the present generation of wireless communication due to lesser number of radiating beams. The composite system comprises three parts: a 4 x 4 Butler matrix, an antenna array of 1 x 4 elements, and a reconfigurable FSS layer. Four semi-rigid coaxial cables are employed to connect the Butler matrix to the four-element antenna array. The reconfigurable FSS is mounted on top of antenna layer using air spacers. The FSS superstrate layer consists of 6 x 6 reconfigurable unit cells, which have been further divided into two equal sections to increase the number of radiating beams. Combining the four-port Butler matrix with reconfigurable FSS allows the system to generate 12 unique radiating beams in 12 distinct directions in 3-D space. The proposed system is designed, fabricated, and measured for operating frequency of 5.5 GHz. The proposed system attains a maximum tilt of 72(degrees) and a peak gain of 11.8 dBi.

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